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Conformational equilibria in allosteric control of Hsp70 chaperones
被引:13
|作者:
Wang, Wei
[1
,2
]
Liu, Qinglian
[3
]
Liu, Qun
[4
]
Hendrickson, Wayne A.
[1
,5
]
机构:
[1] Columbia Univ, Dept Biochem & Mol Biophys, 630 W 168th St, New York, NY 10032 USA
[2] Columbia Univ, Dept Biol Sci, New York, NY 10027 USA
[3] Virginia Commonwealth Univ, Dept Physiol & Biophys, Med Coll Virginia Campus, Richmond, VA 23298 USA
[4] Brookhaven Natl Lab, Dept Biol, Upton, NY 11973 USA
[5] Columbia Univ, Dept Physiol & Cellular Biophys, New York, NY 10032 USA
关键词:
SUBSTRATE-BINDING;
CRYSTAL-STRUCTURE;
STRUCTURAL BASIS;
PEPTIDE-BINDING;
DNAK;
PROTEINS;
ATP;
DOMAIN;
MECHANISM;
EXCHANGE;
D O I:
10.1016/j.molcel.2021.07.039
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
Heat-shock proteins of 70 kDa (Hsp70s) are vital for all life and are notably important in protein folding. Hsp70s use ATP binding and hydrolysis at a nucleotide-binding domain (NBD) to control the binding and release of client polypeptides at a substrate-binding domain (SBD); however, the mechanistic basis for this allostery has been elusive. Here, we first characterize biochemical properties of selected domain-interface mutants in bacterial Hsp70 DnaK. We then develop a theoretical model for allosteric equilibria among Hsp70 conformational states to explain the observations: a restraining state, Hsp70(R)-ATP, restricts ATP hydrolysis and binds peptides poorly, whereas a stimulating state, Hsp70(s)-ATP, hydrolyzes ATP rapidly and has high intrinsic substrate affinity but rapid binding kinetics. We support this model for allosteric regulation with DnaK structures obtained in the postulated stimulating state S with biochemical tests of the S-state interface and with improved peptide-binding-site definition in an R-state structure.
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页码:3919 / +
页数:23
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